Memory effects in classical and quantum mean-field disordered models
arXiv:cond-mat/0403706 · doi:10.1140/epjb/e2004-00298-2
Abstract
We apply the Kovacs experimental protocol to classical and quantum p-spin models. We show that these models have memory effects as those observed experimentally in super-cooled polymer melts. We discuss our results in connection to other classical models that capture memory effects. We propose that a similar protocol applied to quantum glassy systems might be useful to understand their dynamics.
24 pages, 12 figures
References in corpus (9)
- Kovacs effects in an aging molecular liquid
- Stress-aging in the electron-glass
- The Kovacs effect in model glasses
- History-dependent relaxation and the energy scale of correlation in the Electron-Glass
- Dynamics of the Destruction and Rebuilding of a Dipole Gap in Glasses
- Kovacs effect and fluctuation-dissipation relations in 1D kinetically constrained models
- Field-induced structural aging in glasses at ultra low temperatures
- A Dynamical Study of the Quantum p=2 Spherical Model
- Dynamic heterogeneities in the out-of-equilibrium dynamics of simple spherical spin models
Cited by in corpus (16)
- Memory formation in matter
- Nonmonotonic Aging and Memory Retention in Disordered Mechanical Systems
- Kovacs-like memory effect in driven granular gases
- Giant Kovacs-Like Memory Effect for Active Particles
- The Kovacs effect: a master equation analysis
- Kovacs Effect in a Fragile Glass Model
- Memory effects in the relaxation of the Gaussian trap model
- Kovacs effect in facilitated spin models of strong and fragile glasses
- The Kovacs effect in the one-dimensional Ising model: a linear response analysis
- Quantum quenches in isolated quantum glasses out of equilibrium
- Memory in Non-Monotonic Stress Response of an Athermal Disordered Solid
- Non-equilibrium memory effects: granular fluids and beyond
- Memory Effects in the Standard Model for Glasses
- Kovacs Effect in Glass with Material Memory Revealed in Non-Equilibrium Particle Interactions
- Aging in the trap model as a relaxation further away from equilibrium
- Kovacs effect in solvable model glasses